MEMS-based LiDAR (micro-electro–mechanical system based light detection and ranging), with a low cost and small volume, becomes a promising solution for the two-dimensional (2D) and three-dimensional (3D) optical imaging. A semi-coaxial MEMS LiDAR design, based on a synchronous MEMS mirror pair, was proposed in our early study. In this paper, we specifically reveal the synchronization method of the comb-actuated MEMS mirror pair, including the frequency, amplitude, and phase synchronization. The frequency sweeping and phase adjustment are simultaneously implemented to accelerate the MEMS mirror synchronization process. The experiment is set up and the entire synchronization process is completed within 5 s. Eventually, a one-beam MEMS LiDAR ...
In this paper, we present a low cost prototype of a Time-Of-Flight (TOF) LiDAR system, employing a S...
MEMS mirrors can steer, modulate and switch light, as well as control the wavefront for focusing or ...
MEMS-based LIDAR has the advantages of fast-scanning, simple structure, small volume, and light weig...
Resonant MEMS mirror has been recognized as one of the solid-state laser beam steering (LBS) solutio...
Abstract This paper presents a light detection and ranging (LIDAR) system using electromagnetically ...
Traditional laser scanners for 3D distance measurement involve expensive, heavy, (potentially) slow ...
In a lidar system, replacing moving components with solid-state devices is highly anticipated to mak...
A novel method of beam steering, utilizing a mass-produced Digital Micromirror Device (DMD), enables...
This article presents the design and system integration of a hybrid MEMS scanner array (MSM) develop...
By combining a Micro Electro Mechanical System based resonant mirror and a Digital Micromirror Devic...
In this article we present a new large aperture 1D-MEMS scanner module especially designed for laser...
The sampling rate and angular resolution of diffraction-based beam steering employing a digital micr...
Optical phased array (OPA) systems are an emerging technology for lightweight and miniature LiDAR sc...
Piezoelectrically actuated resonant micromirrors were designed to meet the light detection and rangi...
We present an optical architecture for a scanning lidar in which a digital micromirror device (DMD) ...
In this paper, we present a low cost prototype of a Time-Of-Flight (TOF) LiDAR system, employing a S...
MEMS mirrors can steer, modulate and switch light, as well as control the wavefront for focusing or ...
MEMS-based LIDAR has the advantages of fast-scanning, simple structure, small volume, and light weig...
Resonant MEMS mirror has been recognized as one of the solid-state laser beam steering (LBS) solutio...
Abstract This paper presents a light detection and ranging (LIDAR) system using electromagnetically ...
Traditional laser scanners for 3D distance measurement involve expensive, heavy, (potentially) slow ...
In a lidar system, replacing moving components with solid-state devices is highly anticipated to mak...
A novel method of beam steering, utilizing a mass-produced Digital Micromirror Device (DMD), enables...
This article presents the design and system integration of a hybrid MEMS scanner array (MSM) develop...
By combining a Micro Electro Mechanical System based resonant mirror and a Digital Micromirror Devic...
In this article we present a new large aperture 1D-MEMS scanner module especially designed for laser...
The sampling rate and angular resolution of diffraction-based beam steering employing a digital micr...
Optical phased array (OPA) systems are an emerging technology for lightweight and miniature LiDAR sc...
Piezoelectrically actuated resonant micromirrors were designed to meet the light detection and rangi...
We present an optical architecture for a scanning lidar in which a digital micromirror device (DMD) ...
In this paper, we present a low cost prototype of a Time-Of-Flight (TOF) LiDAR system, employing a S...
MEMS mirrors can steer, modulate and switch light, as well as control the wavefront for focusing or ...
MEMS-based LIDAR has the advantages of fast-scanning, simple structure, small volume, and light weig...